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1)  Ultra-fine grain tungsten-penetrators
超细晶钨基穿甲弹
1.
WHAs is Tungsten Heavy Alloys or tungsten-based alloy, it is used to the materials of Ultra-fine grain tungsten-penetrators because of its high density, high strength, good ductility and a series of advantages.
本文对常用的钨合金穿甲弹和特制的超细晶钨基穿甲弹进行了靶场侵彻对比试验。
2)  tungsten alloy penetrator
钨合金穿甲弹
1.
Influence of tungsten alloy penetrators penetrating armour on target proprty around crater;
钨合金穿甲弹侵彻钢装甲过程对弹坑附近靶板性能的影响
2.
Behavior of reverse spattering out metal flow in tungsten alloy penetrators penetrating armour;
钨合金穿甲弹侵彻装甲反向喷溅金属流的性态
3.
According to the characteristic of remain tungsten alloy penetrators in recover crater that was destroyed in penetrating end, spread peculiarity of plastic wave of tungsten alloy in impact has been studied using two stage light gas gun.
根据回收弹坑中钨合金穿甲弹在侵彻结束时已完全破坏的特征,采用二级轻气炮研究了撞击时钨合金中塑性波传播的特性。
3)  tungsten alloy penetrators
钨合金穿甲弹芯
1.
Effective and reasonable computational models are established to simulate the penetrating processes for the tungsten fiber reinforced tungsten alloy matrix composite penetrators and the tungsten alloy penetrators by the DYNA 3D finite element program.
采用DYNA3D有限元程序,通过建立合理的计算模型,对钨丝集束复合材料穿甲弹芯及钨合金穿甲弹芯的穿甲过程进行了数值模拟研究。
4)  Tungsten-core APDS
钨芯脱壳穿甲弹
5)  tungsten fiber reinforced tungsten alloy matrix composite penetrators
钨丝集束穿甲弹芯
1.
Effective and reasonable computational models are established to simulate the penetrating processes for the tungsten fiber reinforced tungsten alloy matrix composite penetrators and the tungsten alloy penetrators by the DYNA 3D finite element program.
对模拟结果进行了对比分析,探讨了钨丝集束穿甲弹芯穿甲性能优于普通钨合金弹芯的原因,并对数值模拟结果进行了试验验证,为未来集束穿甲弹芯的设计与进一步研究提供了可靠的理论及实验资料。
6)  APSVDS (Armor Piercing Supervelocity Discarding Sabot)
超速脱壳穿甲弹
补充资料:钯钨合金
分子式:
CAS号:

性质:是钯基含钨的二元合金,简单包晶反应,在13%~20%范围内合金中形成“K-状态”,导致电阻系数、对铜热电势和硬度增大,电阻温度系数降低。有PdW5,PdW8 ,PdW10 ,PdW20 和PdW25等牌号合金。含5%~20%钨的合金用高频炉熔炼,高钨合金用电孤炉熔炼。电阻材料,作电位器绕组。

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